Skip to main content
  • Clariant Logo
  • 共有する
  • お問合せ先
  • JP - US
  • Translate
  • Contrast
  • 検索
  • 製品&ソリューション
  • サステナビリティ
  • Company
  • メディア
  • Investors
  • Careers
  • Events
終了
検索
終了
SDS & Document Finder
result(s)
すべての結果
終了
Facebook Twitter Linkedin Eメール WhatsApp More Options
終了
終了
The translation will be performed automatically using AI. Please double-check important facts and statements.
終了
Clariant International
  • 製品&ソリューション
  • サステナビリティ
  • Company
  • メディア
  • Investors
  • Careers
  • Events
ホーム / クラリアント スペシャリティケミカルズ / Clariant news / Clariant Catalysts and Lummus Technology win contr…
News
要約する
2024年6月12日

Clariant Catalysts and Lummus Technology win contract for new CATOFIN® plant in China

Catalysts Global Oil and Gas Plastics and Polymers Refinery and Petrochemicals Chemical Intermediates Customer focus
Clariant Photo Catofin Propane Dehydrogenation Catalysts 2024 small
  • Qingyang Tongxin Petroleum Technology has chosen the CATOFIN process and catalysts for its first propane and isobutane co-processing plant
  • The customer will upgrade liquefied petroleum gas feedstock to produce chemicals and refined products
  • Lummus’s CATOFIN technology and Clariant’s tailor-made catalysts lead the market for on-purpose propylene and isobutylene production, offering superior productivity and reliability

MUNICH, JUNE 12, 2024 – Clariant, a sustainability-focused specialty chemical company, today announced that it was awarded a contract to supply CATOFIN catalysts for Qingyang Tongxin Petroleum Technology’s first-ever paraffin dehydrogenation plant. The unit will be based in Qingyang City, Gansu Province, China, and designed to process 300 KTA of combined propane and isobutane from liquefied petroleum gas feedstock to produce chemicals and refined products. For the project, Clariant will be collaborating with its long-standing process partner, Lummus Technology. 

Jace Wang, Head of Propylene, Vice President BU Catalyst at Clariant, commented, “We are pleased to join forces again with Lummus on this milestone CATOFIN project for Qingyang Tongxin. Together, we continue to lead the market of on-purpose olefin production with a unique solution that is highly productive and profitable for our customers. We look forward to a successful start of operations, and excellent results for Qingyang Tongxin.”

Romain Lemoine, Chief Business Officer of Polymers and Petrochemicals at Lummus Technology, stated, “Qingyang Tongxin’s selection of CATOFIN for their first plant is a testament to the confidence our customers place in the technology. It shows continued recognition of CATOFIN's exceptional reliability, robustness, and feed flexibility.” 

The CATOFIN process combines Lummus’s advanced PDH technology with Clariant’s tailor-made catalysts and Heat Generating Material (HGM) to convert liquefied petroleum gas to on-purpose olefins with unsurpassed reliability. The process has a proven track record of increasing productivity, often beyond design capacity (up to 110% on average), giving producers a significantly higher return on investments, and enabling more profitable daily operations. 

The Qingyang Tongxin project marks the 40th plant since 2017 to employ CATOFIN technology and catalysts for paraffin dehydrogenation. 

Learn more about Clariant’s high-performance CATOFIN catalysts.  
 


Documents

  • Media Release Clariant Catalysts and Lummus Technology win contract for new CATOFIN plant in China 12062024 EN (0.21 MB)

関連する画像・動画

  • Clariant Photo Catofin Propane Dehydrogenation Catalysts 2024 (0.73 MB)
Read all news
Clariant International
          Clariant International
          私たちは、顧客のニーズを知ることにより、競争力のある革新的なソリューションを提供することで価値を創造します。従業員のニーズに対しては、当社の企業価値を守ることにより、価値を創造します。株主のニーズに対しては、標準を上回る利益を達成することにより、価値を創造します。環境のニーズに対しては、持続可能な方法で活動することにより、価値を創造します。
          ソーシャル
          • 当サイトについて
          • 利用規約
          • Data protection and privacy
          • General Terms and Conditions of Sale and Purchase
          著作権 © Clariant 2024 無断複写・複製・転載禁止。

          ページの要約

          close
          要約中です
          このページはAIによって要約されています。